Mixing degree effect in the photodegradation of olive mill wastewater

Mha Albqmi, Nathalia Basegio-Castellani, Amani Belaiba, G. Hodaifa
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Abstract

Currently, in olive oil producing countries, wastewater from olive mills is collected in large evaporation ponds without any treatment. This overall situation presents an environmental problem due to their high organic load and the presence of toxic and inhibiting growth compounds. Photo-Fenton reaction can be used to degrade the pollutant compounds that present in OMWs. The degree of mixing inside the photoreactor is a key parameter to increase the photodegradation of organic matter. For this reason, experiments were performed in a semi-industrial batch stirred photo-reactor (10 L capacity). The agitation rates were varied in each experiment as follows 60, 150, 300, 400, and 500 rpm. The experimental results showed that the photoreaction has developed in two steps, an instantaneous reaction that takes place in the first five moments and a second reaction that is slower and lasts up to three hours. During the instantaneous reaction, the conversion based on total organic carbon (TOC) increases with the augment of agitation rate, however, during the second step the maximum conversion (XTOC = 0.9) is recorded at 300 rpm in the first 100 min. The common operating conditions were initial pH = 3, hydrogen peroxide equal to that determined by the stoichiometry of the reaction, oxidant/catalyst ratio = 0.03, temperature = 20 °C and four artificial ultraviolet lamps to provide sufficient ultraviolet irradiation. The final treated water could be used in irrigation.
混合度对橄榄厂废水光降解的影响
目前,在橄榄油生产国,橄榄厂的废水被收集在大型蒸发池中,没有任何处理。由于它们的高有机负荷和有毒和抑制生长的化合物的存在,这种总体情况提出了一个环境问题。光- fenton反应可用于降解水中的污染物。光反应器内的混合程度是提高有机物光降解率的关键参数。为此,在容量为10 L的半工业间歇式搅拌光反应器中进行了实验。每次实验的搅拌速率分别为60、150、300、400和500 rpm。实验结果表明,光反应分两步进行,第一步是发生在前五个瞬间的瞬时反应,第二步反应较慢,持续时间长达三个小时。在瞬时反应中,基于总有机碳(TOC)的转化率随着搅拌速率的增加而增加,然而,在第二步中,在前100分钟以300转/分的转速记录最大转化率(XTOC = 0.9)。常见的操作条件是初始pH = 3,过氧化氢等于反应的化学计量学决定的,氧化剂/催化剂比= 0.03,温度= 20°C和4个人工紫外线灯,提供足够的紫外线照射。处理后的水可用于灌溉。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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